Oiling device for rotating shaft

By designing an oiling device for the rotating shaft, automatic cleaning, oiling and draining of the rotating shaft are achieved, which solves the problem of cumbersome manual operation in the existing technology, reduces labor intensity and improves resource utilization.

CN223393708UActive Publication Date: 2025-09-30NINGBO HENGYUAN AXLE IND CO LTD
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Patent Information

Application Number
CN202422536341.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-19
Publication Date
2025-09-30
Estimated Expiration
2034-10-19

AI Technical Summary

Technical Problem

In the prior art, the oiling operation of the rotating shaft requires manual handling and oiling, which has a low degree of automation and leads to high labor intensity.

Method used

A shaft oiling device is designed, which includes a frame, a transfer assembly, a cleaning area, an oiling area and a draining assembly. The cleaning, oiling and draining processes of the shaft are automatically completed by the transfer assembly, and the movement and positioning of the shaft are achieved by using a clamping part and a lifting part.

Benefits of technology

The workload of operators is reduced, the degree of automation of the shaft oiling process is improved, manual operations are reduced, and the utilization rate of cleaning fluid and oil is higher.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shaft machining devices, and provides an oiling device for a rotating shaft, the oiling device comprises a rack, a transfer assembly, a cleaning area, an oiling area and a draining assembly, the transfer assembly is arranged on the rack and is used for conveying the rotating shaft; the cleaning area, the oiling area and the draining assembly are sequentially arranged, the cleaning area is used for cleaning the rotating shaft, the oiling area is used for oiling the cleaned rotating shaft, and the draining assembly is used for draining the oiled rotating shaft. The rotary shaft oiling device has the effects of conveniently oiling the rotary shaft and reducing the labor intensity of workers.
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Description

Technical Field

[0001] The present application relates to the technical field of shaft processing devices, and in particular to an oiling device for a rotating shaft. Background Art

[0002] The motor shaft is an important component of the motor. All motor components are mounted on the shaft. After the shaft is processed, the outer surface of the shaft needs to be oiled to prevent wear during transportation and use.

[0003] In the prior art, an operator usually cleans the shaft and then oils the shaft surface or puts the shaft into oil for oiling.

[0004] Regarding the above-mentioned related technologies, this solution requires operators to carry out operations such as moving and oiling the rotating shaft. The degree of automation is low and the workload is large, so it needs to be improved. Utility Model Content

[0005] In order to facilitate the oiling of the rotating shaft and reduce the labor intensity of personnel, the present application provides an oiling device for the rotating shaft.

[0006] The present application provides a shaft oiling device that adopts the following technical solution:

[0007] A shaft oiling device comprises a frame, a transfer assembly, a cleaning area, an oiling area and a draining assembly, wherein the transfer assembly is arranged on the frame and is used to transport the shaft; the cleaning area, the oiling area and the draining assembly are arranged in sequence, the cleaning area is used to clean the shaft, the oiling area is used to oil the cleaned shaft, and the draining assembly is used to drain the oiled shaft.

[0008] By adopting the above technical solution, when the rotating shaft needs to be oiled, the transfer assembly first moves the rotating shaft to the cleaning area for cleaning. After cleaning the rotating shaft in the cleaning area, the transfer assembly continues to move the rotating shaft to the oiling area for oiling. After the oiling is completed in the oiling area, the transfer assembly moves the rotating shaft to the draining assembly for draining. The transfer assembly sequentially cleans, oils, and drains the rotating shaft, eliminating the need for operator transfer, thus reducing the operator's workload.

[0009] Preferably, the transfer assembly includes a translation seat, a lifting member and a clamping member, the translation seat is horizontally movable on the frame, the lifting member is arranged on the translation seat, the clamping member is connected to the lifting member and is used to clamp the rotating shaft, and the lifting member is used to control the up and down movement of the clamping member.

[0010] By adopting this technical solution, the gripper can clamp the shaft to be oiled, and the lifting cylinder can control the gripper's vertical movement, thereby controlling the shaft's insertion into the cleaning and oiling areas. The translation seat can also drive the lifting member and the shaft to move horizontally simultaneously, allowing the shaft to be cleaned, oiled, and drained in sequence.

[0011] Preferably, the lifting member is a lifting cylinder, an electric push rod or a linear motor.

[0012] By adopting the above technical solution, the lifting cylinder, electric push rod or linear motor can all be used to perform the lifting action.

[0013] Preferably, the cleaning area is opened and used to store cleaning liquid. A liquid inlet and a liquid outlet are provided on the cleaning area, and the height of the liquid inlet is higher than that of the liquid outlet.

[0014] By adopting the above technical solution, the lifting member drives the rotating shaft to move into the cleaning area, thereby achieving cleaning of the rotating shaft. At the same time, the cleaning liquid adopts a top-in-bottom-out method, and the cleaning liquid can enter the cleaning area from the liquid inlet and then flow out from the liquid outlet, making it convenient to replace the cleaning liquid in the cleaning area.

[0015] Preferably, the oiling area is opened and used to store oil, and an oil inlet and an oil outlet are provided on the oiling area.

[0016] By adopting the above technical solution, the lifting member can control the shaft to move to the inside of the cleaning area, thereby completing the oiling of the shaft. The oil inlet is used for oil inflow, and the oil outlet is used for oil outflow.

[0017] Preferably, the drain assembly includes a receiving platform, a drain basin and a collection tray, the receiving platform is located on one side of the oiling area, the drain basin is placed on the receiving platform, the drain basin is used to place the rotating shaft to be oiled, and the collection tray is located below the drain basin and is used to collect the oil dropped from the drain basin;

[0018] Wherein, an inclined guide surface is provided on a side of the collecting tray facing the oiling area, and the inclined guide surface is arranged to be inclined downward in a direction close to the oiling area.

[0019] By adopting the above technical solution, the rotating shafts to be oiled can be placed centrally in a colander. The clamping component then clamps the entire colander. The lifting component then controls the colander to enter the cleaning or oiling area. The cleaning liquid or oil can pass through the through-holes of the colander, thereby immersing the rotating shafts, completing the cleaning and oiling. When the rotating shafts are oiled, the transfer component moves the colander to the receiving platform. Under the action of gravity, the remaining oil on the rotating shafts can drip onto the collection tray. The oil in the collection tray can then flow back to the oiling area along the inclined guide surface, achieving reuse and reducing oil waste.

[0020] Preferably, the receiving platform includes a plurality of support rods arranged in parallel, and a gap is left between two adjacent support rods.

[0021] By adopting the above technical solution, each support rod forms a support plane for supporting the colander, and the gap between the two support rods allows oil to pass through and drip into the collection tray.

[0022] Preferably, a tapered needle is provided on the support rod, the cross section of the tapered needle gradually decreases in a direction away from the support rod, and the tip of the tapered needle faces the collecting tray.

[0023] By adopting the above technical solution, the tapered needle can drain the oil on the support rod, making it easier for the oil to drip into the collection tray more quickly.

[0024] In summary, this application includes at least one of the following beneficial technical effects:

[0025] (1) By setting up a transfer component, a cleaning area, an oiling area and a draining component, the rotating shaft can be cleaned, oiled and drained in sequence through the function of the transfer component, without the need for operators to transfer, thereby reducing the labor intensity of the personnel.

[0026] (2) By setting an oil inlet and an oil outlet in the cleaning area, the cleaning liquid can enter the cleaning area from the liquid inlet and then flow out from the liquid outlet, making it convenient to replace the cleaning liquid in the cleaning area.

[0027] (3) By setting a conical needle, the conical needle can drain the oil on the support rod, making it easier for the oil to drip into the collection tray faster. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 This is a schematic structural diagram of the oiling device in an embodiment of the present application;

[0029] Figure 2 It is a structural schematic diagram of the oiling device from another perspective in the embodiment of the present application.

[0030] Figure markings: 1. Frame; 2. Transfer assembly; 21. Translation seat; 22. Lifting member; 23. Clamping member; 3. Cleaning area; 4. Oiling area; 5. Draining assembly; 51. Receiving table; 52. Colander; 53. Collection tray; 6. Liquid inlet; 7. Liquid outlet; 8. Oil inlet; 9. Oil outlet; 10. Inclined guide surface; 11. Conical needle. DETAILED DESCRIPTION

[0031] The following will describe the technical solution of the present application in conjunction with the drawings in the embodiments of the present application. Obviously, the embodiments described are only part of the embodiments of the present application, not all of the embodiments. The present application can be embodied in many different forms and is not limited to the embodiments described here.

[0032] Throughout the present application, reference to terms such as "one embodiment," "some embodiments," "examples," "specific examples," or "some examples" means that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present application. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the specification and claims of this application and the above-mentioned figure descriptions are intended to cover non-exclusive inclusions.

[0034] In the description of the embodiments of this application, unless otherwise specified or limited, technical terms such as "installed," "connected," "connected," and "fixed" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, integration, or mechanical connections. Those skilled in the art will understand the specific meanings of these terms in the embodiments of this application based on specific circumstances.

[0035] Some embodiments of the present application are described in detail below with reference to the accompanying drawings. In the absence of conflict, those skilled in the art may combine and combine the different embodiments or examples and features of the different embodiments or examples shown in the present application.

[0036] The embodiment of the present application discloses a shaft oiling device. Figure 1The oiling device includes a frame 1, a transfer assembly 2, a cleaning area 3, an oiling area 4 and a draining assembly 5. The frame 1 serves as a supporting carrier and is fixedly installed on the ground. The transfer assembly 2 is installed on the frame 1 and is used to transport the rotating shaft to be oiled. The transfer assembly 2 includes a translation seat 21, a lifting member 22 and a clamping member 23. The translation seat 21 is arranged on the frame 1 for movement in the horizontal direction. The movement method of the translation seat 21 can adopt conventional means of the existing technology, which will not be elaborated here. The lifting member 22 is installed on the translation seat 21, and the clamping member 23 is connected to the lifting member 22; the clamping member 23 is used to clamp the rotating shaft to be oiled, and the lifting member 22 is used to control the clamping member 23 to move up and down in the vertical direction. In this embodiment, the lifting member 22 is an actuator such as a lifting cylinder, an electric push rod or a linear motor.

[0037] The cleaning area 3, the oiling area 4 and the draining assembly 5 are arranged in sequence. The cleaning area 3 is used to clean the rotating shaft, the oiling area 4 is used to oil the cleaned rotating shaft, and the draining assembly 5 is used to drain the rotating shaft after oiling. Specifically, the cleaning area 3 is opened and used to store cleaning liquid; the cleaning area 3 is provided with a liquid inlet 6 and a liquid outlet 7, and the height of the liquid inlet 6 is higher than the height of the liquid outlet 7. The cleaning liquid can enter the cleaning area 3 from the liquid inlet 6 and then flow out from the liquid outlet 7, which is convenient for replacing the cleaning liquid used for a long time in the cleaning area 3. The oiling area 4 is opened and used to store oil; the oiling area 4 is also provided with an oil inlet 8 and an oil outlet 9, and the height of the oil inlet 8 is higher than the height of the oil outlet 9.

[0038] When the shaft needs to be oiled, the clamping member 23 is first used to clamp the shaft. Then, the position of the translation seat 21 is controlled, and the lifting member 22 is used to move the shaft to the cleaning area 3 for cleaning. After the shaft is cleaned in the cleaning area 3, the transfer assembly 2 is used to move the shaft to the oiling area 4 for oiling. After the oiling is completed in the oiling area 4, the transfer assembly 2 is used to move the shaft to the draining assembly 5 for draining. The transfer assembly 2 sequentially cleans, oils, and drains the shaft, eliminating the need for manual transfer by the operator and reducing workload.

[0039] The drain assembly 5 includes a receiving platform 51, a drain basin 52, and a collection tray 53. The receiving platform 51 is located on the side of the oiling area 4 away from the cleaning area 3. The drain basin 52 is placed on the receiving platform 51 and is used to place the rotating shaft to be oiled. The collection tray 53 is located below the drain basin 52 and is used to collect the oil that falls from the drain basin 52.

[0040] The shafts to be oiled are placed in a colander 52. The clamping member 23 then clamps the entire colander 52. The lifting member 22 then guides the colander 52 into the cleaning area 3 or the oiling area 4. The cleaning fluid or oil can penetrate through the holes in the colander 52, submerging the shafts and completing the cleaning and oiling process. Once the shafts are oiled, the transfer assembly 2 moves the colander 52 onto the receiving platform 51, allowing any remaining oil on the shafts to drip onto the collection tray 53 under the action of gravity.

[0041] The collection tray 53 is provided with an inclined guide surface 10 on the side facing the oiling area 4. This inclined guide surface 10 is arranged downwardly, slanting toward the oiling area 4. This guide surface 10 is used to guide the oil from the collection tray 53 back into the oiling area 4, enabling reuse and reducing oil waste. In this embodiment, the receiving platform 51 includes several parallel support rods, each of which forms a support plane for the drain basin 52. A gap is left between adjacent support rods, allowing oil to pass through and drip into the collection tray 53.

[0042] Furthermore, in some embodiments, a tapered needle 11 is fixedly connected to the support rod, the cross-sectional diameter of the tapered needle 11 gradually decreasing in the direction away from the support rod, and the tip of the tapered needle 11 is directed toward the collection tray 53. The tapered needle 11 can drain the oil on the support rod, facilitating the oil to drip into the collection tray 53 more quickly.

[0043] The operating principle of the rotating shaft oiling device according to the embodiment of the present application is as follows: when the rotating shaft needs to be oiled, the entire colander 52 is first clamped using the clamping member 23, and then the lifting member 22 is used to control the colander 52 to be immersed in the cleaning area 3 for cleaning. After cleaning, the colander 52 is moved to the oiling area 4 using the transfer assembly 2 for oiling. After the oiling is completed, the colander 52 is placed on the receiving platform 51 using the transfer assembly 2 for draining. Through the function of the transfer assembly 2, the rotating shaft is cleaned, oiled, and drained in sequence, eliminating the need for manual transfer by the operator, thereby reducing the operator's workload.

[0044] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A shaft oiling device, characterized in that: The invention comprises a frame (1), a transfer assembly (2), a cleaning area (3), an oiling area (4) and a draining assembly (5), wherein the transfer assembly (2) is arranged on the frame (1) and is used to transport the rotating shaft; the cleaning area (3), the oiling area (4) and the draining assembly (5) are arranged in sequence, the cleaning area (3) is used to clean the rotating shaft, the oiling area (4) is used to oil the cleaned rotating shaft, and the draining assembly (5) is used to drain the oiled rotating shaft.

2. The shaft oiling device according to claim 1, characterized in that: The transfer assembly (2) includes a translation seat (21), a lifting member (22) and a clamping member (23), wherein the translation seat (21) is arranged on the frame (1) for horizontal movement, the lifting member (22) is arranged on the translation seat (21), the clamping member (23) is connected to the lifting member (22) and is used to clamp the rotating shaft, and the lifting member (22) is used to control the upward and downward movement of the clamping member (23).

3. The shaft oiling device according to claim 2, characterized in that: The lifting member (22) is a lifting cylinder, an electric push rod or a linear motor.

4. The shaft oiling device according to claim 1, characterized in that: The cleaning area (3) is provided with an opening and is used to store cleaning liquid. A liquid inlet (6) and a liquid outlet (7) are provided on the cleaning area (3). The height of the liquid inlet (6) is higher than that of the liquid outlet (7).

5. The shaft oiling device according to claim 1, characterized in that: The upper oiling area (4) is provided with an opening and is used for storing oil. An oil inlet (8) and an oil outlet (9) are provided on the upper oiling area (4).

6. The shaft oiling device according to claim 1, characterized in that: The drain assembly (5) comprises a receiving platform (51), a drain basin (52) and a collecting plate (53), wherein the receiving platform (51) is located on one side of the oiling area (4), the drain basin (52) is placed on the receiving platform (51), and the drain basin (52) is used to place the rotating shaft to be oiled, and the collecting plate (53) is located below the drain basin (52) and is used to collect the oil dropped from the drain basin (52); Wherein, the collecting plate (53) is provided with an inclined guide surface (10) on one side facing the oiling area (4), and the inclined guide surface (10) is arranged to be inclined downward in a direction close to the oiling area (4).

7. The shaft oiling device according to claim 6, characterized in that: The receiving platform (51) comprises a plurality of support rods arranged in parallel, with a gap remaining between two adjacent support rods.

8. The shaft oiling device according to claim 7, characterized in that: A conical needle (11) is provided on the support rod, the cross section of the conical needle (11) gradually decreases in a direction away from the support rod, and the tip of the conical needle (11) faces the collection tray (53).